English

Macroscopic and Microscopic (Non-)Universality of Compact Support Random Matrix Theory

High Energy Physics - Theory 2009-10-31 v2 Condensed Matter

Abstract

A random matrix model with a sigma-model like constraint, the restricted trace ensemble (RTE), is solved in the large-n limit. In the macroscopic limit the smooth connected two-point resolvent G(z,w) is found to be non-universal, extending previous results from monomial to arbitrary polynomial potentials. Using loop equation techniques we give a closed though non-universal expression for G(z,w), which extends recursively to all higher k-point resolvents. These findings are in contrast to the usual unconstrained one-matrix model. However, in the microscopic large-n limit, which probes only correlations at distance of the mean level spacing, we are able to show that the constraint does not modify the universal sine-law. In the case of monomial potentials V(M)=M2pV(M)=M^{2p}, we provide a relation valid for finite-n between the k-point correlation function of the RTE and the unconstrained model. In the microscopic large-n limit they coincide which proves the microscopic universality of RTEs.

Keywords

Cite

@article{arxiv.hep-th/0002148,
  title  = {Macroscopic and Microscopic (Non-)Universality of Compact Support Random Matrix Theory},
  author = {G. Akemann and G. Vernizzi},
  journal= {arXiv preprint arXiv:hep-th/0002148},
  year   = {2009}
}

Comments

LaTeX, 24 pages; Intro extended, 3 Refs added and typos corrected, to appear in NPB